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COMPARISON OF EFFECTIVE ORGANISMS IN BIOREMEDIATION PROCESSES: POTENTIAL USE OF NUCLEIC ACID PROBES TO ESTIMATE CYANIDE DEGRADATION IN SITU

机译:生物化过程中有效生物的比较:核酸探针估算氰化物降解原位的潜在用途

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Contamination of the environment with cyanide and its metal complexes is a major environmental problem. Fungi that degrade cyanide and metal complexes through induction of the enzyme cyanide hydratase were studied. The screening of six Fusarium strains demonstrated that cyanide degrading activity was inducible, a trait that is possibly common to the genus. Following sequence alignment probes were designed for cyanide hydratase (chy) allowing the application of molecular probes to amplify the gene (DNA), and amplification of mRNA by RT-PCR to measure degradative potential. DNA sequence analysis of the chy gene shows a high degree of homology between species. Interspecies variation within chy allows the application of tools such as RT-PCR denaturing gradient gel electrophoresis (DGGE) to determine that fungi actually degrade cyanide within a community.
机译:用氰化物污染环境及其金属配合物是一个主要的环境问题。研究了通过诱导诱导酶氰化酶水性氰化物酶降解氰化物和金属配合物的真菌。六种镰刀菌菌株的筛查表明,氰化物降解活性诱导,其特征可能与属常见。设计序列对准探针对于氰化物水溶酶(CHY)设计,允许施加分子探针以通过RT-PCR扩增MRNA以测量降解潜力。 CHY基因的DNA序列分析显示物种之间的高度同源性。 CHY中的间隙变化允许应用诸如RT-PCR变性梯度凝胶电泳(DGGE)的工具,以确定真菌在社区内实际降解氰化物。

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